Wave-particle duality is a typical example of Bohr's complementarity principle that plays a significant role in quantum mechanics. Previous studies used the visibility of an interference pattern to quantify the wave property and used path information to quantify the particle property. However, coherence is the core and basis of the interference phenomenon. If we could use coherence to characterize the wave property, the understanding of wave-particle duality would be strengthened. A recent theoretical work [ Phys. Rev. Lett.116, 160406 (2016)] found two relations between quantum coherence and path information. Here, we demonstrate the new measure of wave-particle duality based on two kinds of coherence measures quantitatively for the first time. The wave property, quantified by the coherence in the l-norm measure and the relative entropy measure, can be obtained via tomography of the target state, which is encoded in the path degree of freedom of the photons. The particle property, quantified by the path information, can be obtained via the discrimination of detector states, which is encoded in the polarization degree of freedom of the photons. Our work may deepen people's understanding of coherence and provide a new perspective regarding wave-particle duality.

Download full-text PDF

Source
http://dx.doi.org/10.1364/OE.26.004470DOI Listing

Publication Analysis

Top Keywords

wave-particle duality
20
wave property
12
measure wave-particle
8
particle property
8
property quantified
8
degree freedom
8
freedom photons
8
coherence
7
wave-particle
5
duality
5

Similar Publications

Sign, Signifier and Signified in Schrödinger's box.

MethodsX

December 2024

School of Social Sciences and Languages, Vellore Institute of Technology, Vandalur - Kelambakkam Road, Chennai 600127, Tamil Nadu, India.

This study of the article proposes an interdisciplinary approach, integrating quantum mechanics and structuralism to elucidate the complex dynamics of signification. By paralleling the ambiguous nature of subatomic particles with the linguistic system, the study examines the arbitrary relationship between sign, signifier, and signified through quantum principles. Key concepts from quantum mechanics, such as wave-particle duality, superposition, entanglement, and observer effect, are applied to Saussure's theory of signs, revealing intriguing analogies between the two domains.

View Article and Find Full Text PDF

Wave-particle duality is one of the most notable and counterintuitive features of quantum mechanics, illustrating that two incompatible observables cannot be measured simultaneously with arbitrary precision. In this work, we experimentally demonstrate the equivalence of wave-particle duality and entropic uncertainty relations using orbital angular momentum (OAM) states of light. Our experiment uses an innovative and reconfigurable platform composed of few-mode optical fibers and photonic lanterns, showcasing the versatility of this technology for quantum information processing.

View Article and Find Full Text PDF

Single Electron Self-coherence and Its Wave/Particle Duality in the Electron Microscope.

Microsc Microanal

November 2024

Center for Visualizing Catalytic Processes (VISION), Department of Physics, Fysikvej Building 307, Technical University of Denmark, Kongens Lyngby 2800, Denmark.

Article Synopsis
  • High-resolution phase-contrast images from electron microscopes capture electron interactions, requiring a nuanced understanding of wave behavior and phase coherence over time.
  • The study links the concepts of phase decoherence, energy uncertainty, and coherence length to explain how interactions between electrons and materials affect imaging quality.
  • The findings reveal that when the self-coherence length falls below the crystal unit cell size, it disrupts coherent illumination, potentially influencing broader understanding of interactions in quantum mechanics.
View Article and Find Full Text PDF

Quantum interference is a natural consequence of wave-particle duality in quantum mechanics, and is widely observed at the atomic scale. One interesting manifestation of quantum interference is coherent population trapping (CPT), first proposed in three-level driven atomic systems and observed in quantum optical experiments. Here, we demonstrate CPT in a gate-defined semiconductor double quantum dot (DQD), with some unique twists as compared to the atomic systems.

View Article and Find Full Text PDF

It is widely recognized that light exhibits a wave-particle duality. However, the explanation for the photonic spin Hall effect (PSHE) primarily relies on the wave nature of light as dictated by Maxwell's Equations. There is a lack of exploration into the particle nature of light in this regard.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!